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Selective Adsorption and Electrocatalysis of Polysulfides through Hexatomic Nickel Clusters Embedded in N-Doped Graphene toward High-Performance Li-S Batteries

机译:通过在N掺杂石墨烯中朝向高性能LI-S电池掺杂六元镍簇的选择性吸附和电催化

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摘要

The shuttle effect hinders the practical application of lithium-sulfur (Li-S) batteries due to the poor affinity between a substrate and Li polysulfides (LiPSs) and the sluggish transition of soluble LiPSs to insoluble Li2S or elemental S. Here, we report that Ni hexatomic clusters embedded in a nitrogen-doped three-dimensional (3D) graphene framework (Ni-N/G) possess stronger interaction with soluble polysulfides than that with insoluble polysulfides. The synthetic electrocatalyst deployed in the sulfur cathode plays a multifunctional role: (i) selectively adsorbing the polysulfides dissolved in the electrolyte, (ii) expediting the sluggish liquid-solid phase transformations at the active sites as electrocatalysts, and (iii) accelerating the kinetics of the electrochemical reaction of multielectron sulfur, thereby inhibiting the dissolution of LiPSs. The constructed S@Ni-N/G cathode delivers an areal capacity of 9.43 mAh cm−2 at 0.1 C at S loading of 6.8 mg cm−2, and it exhibits a gravimetric capacity of 1104 mAh g−1 with a capacity fading rate of 0.045% per cycle over 50 cycles at 0.2 C at S loading of 2.0 mg cm−2. This work opens a rational approach to achieve the selective adsorption and expediting of polysulfide transition for the performance enhancement of Li-S batteries.
机译:由于底物和李多硫醚(嘴唇)之间的亲和力差,锂 - 硫磺(Li-S)电池的实际应用和可溶性嘴唇的缓慢转变为不溶性Li2s或元素S的舒适性,施工效果妨碍了锂 - 硫(LI-S)电池的实际应用。嵌入在氮掺杂的三维(3D)石墨烯框架(Ni-N / g)中的Ni六分形式簇具有比具有不溶性多硫化物的可溶性多硫化物相互作用。亚硫阴极中展开的合成电催化剂起多官能的作用:(i)选择性地吸附溶解在电解质中的多硫化物,(iii)加速活性位点处的缓慢液体固相转变作为电催化剂,(III)加速动力学多电元硫的电化学反应,从而抑制唇缘的溶解。构造的S @ Ni-N / G阴极在6.8mg CM-2的载荷下以0.1℃提供9.43mAh cm-2的面积容量,并且它具有1104mAhg-1的重量容量,具有容量衰落率每周循环在0.2℃下为0.045%,在2.0mg cm-2的0.2℃下循环。这项工作开辟了一种合理的方法,以实现对Li-S电池性能增强的多硫化物过渡的选择性吸附和加速。

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